Simulations for the optimization of High Temperatur Superconductor current leads for nuclear fusion applications

Techniques based on numerical simulations have been applied to the analysis of the heat exchanger and the High Temperature Superconductor (HTS) module of HTS current leads. In the first case correlations have been derived for the meander flow geometry. In the second case steady state and transient t...

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Bibliographic Details
Format: eBook
Language:English
Published: KIT Scientific Publishing 2013
Series:Karlsruher Schriftenreihe zur Supraleitung / Hrsg. Prof. Dr.-Ing. M. Noe, Prof. Dr. rer. nat. M. Siegel
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Online Access:Open Access: DOAB: description of the publication
Open Access: DOAB, download the publication
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520 |a Techniques based on numerical simulations have been applied to the analysis of the heat exchanger and the High Temperature Superconductor (HTS) module of HTS current leads. In the first case correlations have been derived for the meander flow geometry. In the second case steady state and transient thermal-electric models have been validated. Both techniques are used to design and optimize HTS current leads. The correlations were applied to a predictive analysis of the ITER HTS current leads. 
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653 |a Computational thermal Fluid Dynamics 
653 |a current lead 
653 |a High Temperature Superconductor 
653 |a Nuclear fusion 
653 |a Numerical simulation 
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